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中国枣树分枝扭曲突变的解剖观察和转录组分析。

Anatomical observation and transcriptome analysis of branch-twisted mutations in Chinese jujube.

机构信息

College of Horticulture, Hebei Agricultural University, Baoding, 071001, China.

Research Center of Chinese Jujube, College of Horticulture, Hebei Agricultural University, Baoding, 071001, China.

出版信息

BMC Genomics. 2023 Aug 29;24(1):500. doi: 10.1186/s12864-023-09572-2.

Abstract

BACKGROUND

Plant organs grow in a certain direction and organ twisted growth, a rare and distinctive trait, is associated with internal structure changes and special genes. The twisted branch mutant of Chinese jujube jujube, an important fruit tree native to China and introduced to nearly 50 countries, provides new typical materials for exploration of plant twisted growth.

RESULTS

In this study, the cytological characteristics and related genes of twisted branches in Chinese jujube were revealed by microscopy observation and transcriptome analysis. The unique coexistence of primary and secondary structures appeared in the twisted parts of branches, and special structures such as collateral bundle, cortical bundles, and internal phloem were formed. Ninety differentially expressed genes of 'Dongzao' and its twisted mutant were observed, in which ZjTBL43, ZjFLA11, ZjFLA12 and ZjIQD1 were selected as candidate genes. ZjTBL43 was homologous to AtTBL43 in Arabidopsis, which was involved in the synthesis and deposition of cellular secondary wall cellulose. The attbl43 mutant showed significant inflorescence stem bending growth. The transgenic lines of attbl43 with overexpression of ZjTBL43 were phenotypically normal.The branch twisted growth may be caused by mutations in ZjTBL43 in Chinese jujube. AtIQD10, AtFLA11 and AtFLA12 were homologous to ZjIQD1, ZjFLA11 and ZjFLA12, respectively. However, the phenotype of their function defect mutants was normal.

CONCLUSION

In summary, these findings will provide new insights into the plant organ twisted growth and a reference for investigation of controlling mechanisms of plant growth direction.

摘要

背景

植物器官沿特定方向生长,器官扭曲生长是一种罕见且独特的特征,与内部结构变化和特殊基因有关。中国枣树的扭曲枝突变体是一种重要的果树,原产于中国,已引入近 50 个国家,为探索植物扭曲生长提供了新的典型材料。

结果

本研究通过显微镜观察和转录组分析揭示了中国枣树扭曲枝的细胞学特征和相关基因。在扭曲部位的分支中,初级和次级结构独特地共存,形成了特殊的结构,如侧束、皮质束和内部韧皮部。观察到‘冬枣’及其扭曲突变体的 90 个差异表达基因,其中 ZjTBL43、ZjFLA11、ZjFLA12 和 ZjIQD1 被选为候选基因。ZjTBL43 与拟南芥中的 AtTBL43 同源,AtTBL43 参与细胞次生细胞壁纤维素的合成和沉积。attbl43 突变体表现出明显的花序茎弯曲生长。过表达 ZjTBL43 的 attbl43 转基因株系表型正常。枣树分支扭曲生长可能是由于 ZjTBL43 基因突变所致。AtIQD10、AtFLA11 和 AtFLA12 分别与 ZjIQD1、ZjFLA11 和 ZjFLA12 同源,但它们功能缺陷突变体的表型正常。

结论

综上所述,这些发现将为植物器官扭曲生长提供新的见解,并为研究植物生长方向的控制机制提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95b9/10466873/8963711e8e26/12864_2023_9572_Fig2_HTML.jpg

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